- Research Article
- 10.5098/fhp.7.7
- Aug 16, 2017
- Frontiers in Heat Pipes
- E Azad
A premiere free-access and peer-reviewed frontier journal site, serving the needs of the thermal-fluids community. See the latest research or submit an article. Quickly share your research with the global thermal-fluids community, for increased citations and impact at no cost.
- Research Article
9
- 10.5098/fhp.7.6
- Jul 16, 2017
- Frontiers in Heat Pipes
- Kamlesh Kiritkumar Mehta + 1 more
A premiere free-access and peer-reviewed frontier journal site, serving the needs of the thermal-fluids community. See the latest research or submit an article. Quickly share your research with the global thermal-fluids community, for increased citations and impact at no cost.
- Research Article
1
- 10.5098/fhp.7.5
- Mar 11, 2017
- Frontiers in Heat Pipes
- John P Kizito + 1 more
A premiere free-access and peer-reviewed frontier journal site, serving the needs of the thermal-fluids community. See the latest research or submit an article. Quickly share your research with the global thermal-fluids community, for increased citations and impact at no cost.
- Research Article
2
- 10.5098/fhp.7.4
- Feb 10, 2017
- Frontiers in Heat Pipes
- Roshan D Bhagat
A premiere free-access and peer-reviewed frontier journal site, serving the needs of the thermal-fluids community. See the latest research or submit an article. Quickly share your research with the global thermal-fluids community, for increased citations and impact at no cost.
- Research Article
2
- 10.5098/fhp.7.3
- Nov 10, 2016
- Frontiers in Heat Pipes
- Yasushi Koito + 2 more
A premiere free-access and peer-reviewed frontier journal site, serving the needs of the thermal-fluids community. See the latest research or submit an article. Quickly share your research with the global thermal-fluids community, for increased citations and impact at no cost.
- Research Article
1
- 10.5098/fhp.7.1
- Sep 8, 2016
- Frontiers in Heat Pipes
- Frédéric Lefevre + 3 more
An experimental setup has been designed, assembled and instrumented to perform thermal tests and observations inside a loop heat pipe (LHP). The hysteresis and temperature oscillations phenomena are investigated. The influence of nucleate boiling in the reservoir on the LHP operation and the effect of non-condensable gases are assessed. The links between temperature oscillations and the hydrodynamic behaviour of the LHP are highlighted. Finally, observations through the transparent lines confirm the occurrence of the condensation phenomena in the condenser and in the transport lines that were already observed by other author .
- Research Article
2
- 10.5098/fhp.7.2
- Sep 8, 2016
- Frontiers in Heat Pipes
- Kok-Seng Ong + 3 more
A premiere free-access and peer-reviewed frontier journal site, serving the needs of the thermal-fluids community. See the latest research or submit an article. Quickly share your research with the global thermal-fluids community, for increased citations and impact at no cost.
- Research Article
5
- 10.5098/fhp.6.7
- Jul 28, 2016
- Frontiers in Heat Pipes
- Roshan D Bhagat + 1 more
A premiere free-access and peer-reviewed frontier journal site, serving the needs of the thermal-fluids community. See the latest research or submit an article. Quickly share your research with the global thermal-fluids community, for increased citations and impact at no cost.
- Research Article
14
- 10.5098/fhp.6.1
- Oct 23, 2015
- Frontiers in Heat Pipes
- Sergii Khairnasov + 1 more
This paper introduces separate-type heat pipe (STHP) based solar receiver systems that enable more efficient operation of concentrated solar power plants without relying on a heat transfer fluid. The solar receiver system may consist of a number of STHP modules that receive concentrated solar flux from a solar collector system, spread the high concentrated solar flux to a low heat flux level, and effectively transfer the received heat to the working fluid of a heat engine to enable a higher working temperature and higher plant efficiency. In general, the introduced STHP solar receiver has characteristics of high heat transfer capacity, high heat transfer coefficient in the evaporator to handle a high concentrated solar flux, non-condensable gas release mechanism, and lower costs. The STHP receiver in a solar plant may also integrate the hot/cold tank based thermal energy storage system without using a heat transfer fluid.
- Research Article
12
- 10.5098/fhp.6.6
- Oct 23, 2015
- Frontiers in Heat Pipes
- Sergii Khairnasov + 1 more
Today widespread usage of cooling systems based on heat pipes contributes significantly to the ensuring of electronics thermal regulating conditions. The use of heat pipes as heat exchangers and heat transfer structural members allows creating a new generation of efficient heat removals on their basis. Today the following areas where heat pipes are widely used can be identified: computer equipment from small computers to large data centers, power electronics, and electronics for special purposes. The article analyzes the current state and prospects of using heat pipes in thermal control system of electronic equipment for ground applications.